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Dynamic stiffness and damping coefficients of aerodynamic tilting-pad journal bearings

机译:气动可倾瓦轴颈轴承的动态刚度和阻尼系数

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摘要

The dynamic gas-film forces of aerodynamic bearing often can be characterized by eight linear stiffness and damping coefficients. How to theoretically predict these coefficients is a very difficult issue for tilting-pad gas bearing design because of its structural complexity. The current study presents a novel and universal theoretical analysis method for calculating the dynamic stiffness and damping coefficients of aerodynamic tilting-pad bearing. The gas-film pressure within the bearing is expressed in the form of dimensionless compressible gas-lubricated Reynolds equation, which is solved by means of the finite element method. With the assumption that the journal and the pads are disturbed with the same frequency, the dynamic coefficients of tilting-pad gas bearing are computed by using the partial derivative method and the equivalent coefficient method. Finally, the investigations are conducted about the effects of bearing number, perturbation frequency of the journal and the pads, eccentricity ratios, preload and length-to-diameter ratio of the bearing on the dynamic coefficients of aerodynamic tilting-pad journal bearing. The numerical results indicate that the dynamic stiffness and damping coefficients of tilting-pad gas bearing are closely related with these factors. The proposed analytical method provides a valuable means of predicting dynamic performances of tilting-pad gas bearing. The solution can be used for the purpose of prediction of dynamic behavior of the rotor systems supported by aerodynamic tilting-pad bearings.
机译:气动轴承的动态气膜力通常可以通过八个线性刚度和阻尼系数来表征。由于其结构复杂性,如何在理论上预测这些系数对于摆式瓦斯轴承设计是一个非常困难的问题。当前的研究提出了一种新颖的,通用的理论分析方法,用于计算空气动力可倾瓦轴承的动态刚度和阻尼系数。轴承内的气膜压力以无量纲可压缩气体润滑雷诺方程的形式表示,该方程可通过有限元法求解。假定轴颈和轴瓦受相同频率的干扰,采用偏导数法和等效系数法计算了轴瓦和瓦块的动系数。最后,研究了轴承数量,轴颈和轴瓦的扰动频率,偏心比,轴承的预载和长径比对气动可倾瓦块轴颈轴承动态系数的影响。数值结果表明,可倾瓦斯轴承的动态刚度和阻尼系数与这些因素密切相关。所提出的分析方法为预测倾翻瓦斯轴承的动态性能提供了一种有价值的手段。该解决方案可用于预测由气动可倾瓦轴承支撑的转子系统的动态性能。

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